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In situ three-dimensional monitoring of collagen fibrillogenesis using SHG microscopy

机译:SHG显微镜原位三维监测胶原原纤维形成

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摘要

We implemented in situ time-lapse Second Harmonic Generation (SHG) microscopy to monitor the three-dimensional (3D) self-assembly of collagen in solution. As a proof of concept, we tuned the kinetics of fibril formation by varying the pH and measured the subsequent exponential increase of fibril volume density in SHG images. We obtained significantly different time constants at pH = 6.5 ± 0.3 and at pH = 7.5 ± 0.3. Moreover, we showed that we could focus on the growth of a single isolated collagen fibril because SHG microscopy is sensitive to well-organized fibrils with diameter below the optical resolution. This work illustrates the potential of SHG microscopy for the rational design and characterization of collagen-based biomaterials.
机译:我们实施了原位延时第二谐波产生(SHG)显微镜,以监测溶液中胶原蛋白的三维(3D)自组装。作为概念的证明,我们通过改变pH值来调节原纤维形成的动力学,并测量了SHG图像中原纤维体积密度的随后指数增长。我们在pH = 6.5±0.3和pH = 7.5±0.3时获得了明显不同的时间常数。此外,我们表明我们可以集中精力于单个分离的胶原原纤维的生长,因为SHG显微镜对直径低于光学分辨率的组织良好的原纤维敏感。这项工作说明了SHG显微镜在合理设计和表征基于胶原的生物材料方面的潜力。

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